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981.
桥梁作为生命线工程的重要组成部分,一旦震坏,将造成交通瘫痪,不利于震后救援、恢复和重建工作.随着西部大开发对交通基础设施需求的迅猛增长,我国西部地区兴建了很多高速公路,钢筋混凝土简支梁桥仍然是公路上量大面广的桥型.考虑到桥梁跨越地形的复杂性,其中很多简支梁桥桥墩墩高差别悬殊.近年来的几次大震(如阿拉斯加地震、委内瑞拉地震、圣·费尔南多地震、马拉瓜地震、希腊地震等),震后调查表明:大量的简支梁桥的上部主梁之间发生碰撞而引发破坏.因此,研究简支梁桥碰撞破坏机理对简支粱桥合理的抗震设计、提高其抗震性能有重要意义. 相似文献
982.
电成像、电测深、电剖面法是目前3种最基本的电阻率探测技术.三维探测的观测系统主要有地表和钻井-地表这两种不同类型的测量.前者的电极阵列成矩形网格状,多采用单极-单极观测装置以增大探测深度,技术难点在于远电极的设置往往会带来难以消除的地电噪音,限制了单点电位测量的精度和应用范围;后者在油田生产的中后期的分层注水以及核废物注浆处理过程中,需要确定流体或者浆片的运移与分布,取深钻井的钢套管作为一个供电电极,形成垂直线电流源,再以钻井为中心对地表的环状网格进行二极或三极测量.可以取得视电阻率和自电位两种测量,得到三维电阻率和异常电荷概率分布的图像. 相似文献
983.
984.
IntroductionSeismologistsbeganaftershocksequenceinvestigationasearlyasendofthe19thcentury.Theaftershockoccurrencefrequencyhasdifferentmodels,whichincludepowerfunctiondecaymodel(Omori,1894),hyperboladecaymodel(Utsu,1961).Mogi(1962)presentedthattheafter-shockoccurrencefrequencydecayedwithdifferentprinciplesduringdifferenttimephasesaftermainshocks.Henceforthseismologistshavestudiedalargenumberofaftershocksequencesbasedonthesemodels.Chineseseismologistsstudiedthetemporal-spatialcharacteristicsof… 相似文献
985.
986.
987.
对于大多数速度场,地震波沿射线传播的初至波走时,可以用有限差分外推的方法在二维或三维数值网格上计算出来. 在保证精度的条件下,为提高计算效率和适应性,本文推导了基于任意矩形网格和局部平面波前近似的有限差分初至波走时计算方法. 另外,该方法对首波和散射波做了合适的处理,而且不会碰到传统射线法存在的阴影区和焦散区等问题. 简单模型和复杂的Marmousi模型试算的结果表明,该方法精度较高并适用于强纵、横向变速的复杂介质. 基于该方法的Kirchhoff叠前深度偏移, 在主要构造和目的层位置的成像效果上基本达到了波动方程法叠前深度偏移的位置成像效果. 由于未考虑续至波等有效能量,在成像的保幅性上不如波动方程法叠前深度偏移的效果,但其计算效率则明显高于全格林函数法和波动方程法. 相似文献
988.
安徽淮河构造变形带及邻近块体现代构造应力场特征 总被引:3,自引:1,他引:3
针对安徽省较特殊的构造环境及历史地震分布特点,利用直达波最大振幅比和系统聚类分析方法,在对安徽淮河中游区1974年以来近百个中小地震震源机制反演、聚类及空间合成的基础上,分析了华北断块南缘的安徽淮河构造变形带及邻近块体震源断层滑动方式、构造应力场分布及块体运动方式、应力场随时间变化等。结果显示:淮河构造变形带及其邻近块体上震源断层总体上以近走滑型或斜滑型破裂为主,但倾滑型破裂也占一定比例;该地区构造应力以水平作用为主,但也存在一定的垂向作用。其中淮北和皖中块体仍可能分别向SWW和NEE方向运动,并在淮河构造变形带上产生左旋剪切作用,呈现一定的继承性活动特征;各块(带)上主压应力P轴走向随时间的变化在总体上较为一致,而各时段之间P轴方位存在一定差异,显示安徽淮河中游区受华北和华南应力场的共同作用,但其地震活动可能主要受控于华北应力场。 相似文献
989.
The Denitrification-Decompostion (DNDC) model was used to estimate the impact of change in management practices on N2O emissions in seven major soil regions in Canada, for the period 1970 to 2029. Conversion of cultivated land to permanent grassland would result in the greatest reduction in N2O emissions, particularly in eastern Canada wherethe model estimated about 60% less N2O emissions for thisconversion. About 33% less N2O emissions were predicted for a changefrom conventional tillage to no-tillage in western Canada, however, a slight increase in N2O emissions was predicted for eastern Canada. GreaterN2O emissions in eastern Canada associated with the adoption of no-tillage were attributed to higher soil moisture causing denitrification, whereas the lower emissions in western Canada were attributed to less decomposition of soil organic matter in no-till versus conventional tilled soil. Elimination of summer fallow in a crop rotation resulted in a 9% decrease in N2O emissions, with substantial emissions occurringduring the wetter fallow years when N had accumulated. Increasing N-fertilizer application rates by 50% increased average emissions by 32%,while a 50% decrease of N-fertilizer application decreased emissions by16%. In general, a small increase in N2O emissions was predicted when N-fertilizer was applied in the fall rather than in the spring. Previous research on CO2 emissions with the CENTURY model (Smith et al.,2001) allowed the quantification of the combined change in N2O andCO2 emissions in CO2 equivalents for a wide range of managementpractices in the seven major soil regions in Canada. The management practices that have the greatest potential to reduce the combined N2O andCO2 emissions are conversion from conventional tillage to permanent grassland, reduced tillage, and reduction of summer fallow. The estimated net greenhouse gas (GHG) emission reduction when changing from cultivated land to permanent grassland ranged from 0.97 (Brown Chernozem) to 4.24 MgCO2 equiv. ha–1 y–1 (BlackChernozem) for the seven soil regions examined. When changing from conventional tillage to no-tillage the net GHG emission reduction ranged from 0.33 (Brown Chernozem) to 0.80 Mg CO2 equiv. ha–1 y–1 (Dark GrayLuvisol). Elimination of fallow in the crop rotation lead to an estimated net GHG emission reduction of 0.43 (Brown Chernozem) to 0.80 Mg CO2 equiv.ha–1 y–1 (Dark Brown Chernozem). The addition of 50% more or 50% less N-fertilizer both resulted in slight increases in combined CO2 and N2O emissions. There was a tradeoff in GHG flux with greaterN2O emissions and a comparable increase in carbon storage when 50% more N-fertilizer was added. The results from this work indicate that conversion of cultivated land to grassland, the conversion from conventional tillage to no-tillage, and the reduction of summerallow in crop rotations could substantially increase C sequestration and decrease net GHG emissions. Based on these results a simple scaling-up scenario to derive the possible impacts on Canada's Kyoto commitment has been calculated. 相似文献
990.
Zhengqiang Li Philippe Goloub Claude Devaux Xingfa Gu Yanli Qiao Fengsheng Zhao Hongbin Chen 《Atmospheric Research》2004,71(4):233-241
Aerosol optical parameters, polarized phase function and single-scattering albdeo, have been retrieved from ground-based sun photometer measurements in Beijing 2003. The measured aerosol optical thickness varies from 0.12 to 0.77 with an average value of 0.39. The measured Ångström coefficient ranges from 0.75 to 1.47 with an average value of 1.21. The retrieved single-scattering albedo at 870 nm is within the 0.76–0.94 range and the average value is 0.85, suggests there are considerable aerosol absorptions in Beijing. The maximum value of retrieved polarized phase function at 870 nm ranges from 0.068 to 0.225 with an average value of 0.16, and it illustrates good correlations with the Ångström coefficient, i.e. the relative size of aerosol particles. Analyses of measurements and theoretical calculations show the polarized phase function is sensitive to aerosol size distribution and complex refractive index, especially the imaginary part of the refractive index which denotes aerosol light absorbing effects. These results suggest that the polarized phase function is an effective and unique aerosol optical parameter and is able to improve the retrieval of aerosol physical properties. 相似文献